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https://github.com/markqvist/RNode_Firmware.git
synced 2024-10-01 03:15:39 -04:00
Cleanup
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a739d6f3ab
commit
97806d1684
@ -995,9 +995,9 @@ void serialCallback(uint8_t sbyte) {
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if (sbyte == TFESC) sbyte = FESC;
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ESCAPE = false;
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}
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npi = sbyte;
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led_set_intensity(npi);
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np_int_conf_save(npi);
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sbyte;
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led_set_intensity(sbyte);
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np_int_conf_save(sbyte);
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}
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#endif
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79
Utilities.h
79
Utilities.h
@ -117,8 +117,9 @@ uint8_t boot_vector = 0x00;
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}
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void led_init() {
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if (EEPROM.read(eeprom_addr(ADDR_CONF_PSET)) != 0xFF) {
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led_set_intensity(EEPROM.read(eeprom_addr(ADDR_CONF_PINT)));
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if (EEPROM.read(eeprom_addr(ADDR_CONF_PSET)) == CONF_OK_BYTE) {
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uint8_t int_val = EEPROM.read(eeprom_addr(ADDR_CONF_PINT));
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led_set_intensity(int_val);
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}
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}
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@ -1181,11 +1182,11 @@ void promisc_disable() {
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#endif
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bool eeprom_info_locked() {
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#if HAS_EEPROM
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uint8_t lock_byte = EEPROM.read(eeprom_addr(ADDR_INFO_LOCK));
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#elif MCU_VARIANT == MCU_NRF52
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uint8_t lock_byte = eeprom_read(eeprom_addr(ADDR_INFO_LOCK));
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#endif
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#if HAS_EEPROM
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uint8_t lock_byte = EEPROM.read(eeprom_addr(ADDR_INFO_LOCK));
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#elif MCU_VARIANT == MCU_NRF52
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uint8_t lock_byte = eeprom_read(eeprom_addr(ADDR_INFO_LOCK));
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#endif
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if (lock_byte == INFO_LOCK_BYTE) {
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return true;
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} else {
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@ -1250,31 +1251,31 @@ void eeprom_update(int mapped_addr, uint8_t byte) {
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EEPROM.write(mapped_addr, byte);
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EEPROM.commit();
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}
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#elif !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// todo: clean up this implementation, writing one byte and syncing
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// each time is really slow, but this is also suboptimal
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uint8_t read_byte;
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void* read_byte_ptr = &read_byte;
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file.seek(mapped_addr);
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file.read(read_byte_ptr, 1);
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file.seek(mapped_addr);
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if (read_byte != byte) {
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file.write(byte);
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}
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written_bytes++;
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#elif !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// todo: clean up this implementation, writing one byte and syncing
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// each time is really slow, but this is also suboptimal
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uint8_t read_byte;
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void* read_byte_ptr = &read_byte;
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file.seek(mapped_addr);
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file.read(read_byte_ptr, 1);
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file.seek(mapped_addr);
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if (read_byte != byte) {
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file.write(byte);
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}
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written_bytes++;
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if ((mapped_addr - eeprom_addr(0)) == ADDR_INFO_LOCK) {
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 4
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eeprom_flush();
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#endif
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}
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if ((mapped_addr - eeprom_addr(0)) == ADDR_INFO_LOCK) {
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 4
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eeprom_flush();
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#endif
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}
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if (written_bytes >= 4) {
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file.close();
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file.open(EEPROM_FILE, FILE_O_WRITE);
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written_bytes = 0;
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}
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if (written_bytes >= 4) {
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file.close();
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file.open(EEPROM_FILE, FILE_O_WRITE);
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written_bytes = 0;
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}
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#endif
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}
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@ -1416,16 +1417,16 @@ bool eeprom_checksum_valid() {
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void bt_conf_save(bool is_enabled) {
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if (is_enabled) {
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eeprom_update(eeprom_addr(ADDR_CONF_BT), BT_ENABLE_BYTE);
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 8
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eeprom_flush();
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#endif
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 8
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eeprom_flush();
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#endif
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} else {
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eeprom_update(eeprom_addr(ADDR_CONF_BT), 0x00);
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 8
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eeprom_flush();
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#endif
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#if !HAS_EEPROM && MCU_VARIANT == MCU_NRF52
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// have to do a flush because we're only writing 1 byte and it syncs after 8
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eeprom_flush();
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#endif
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}
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}
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@ -1442,7 +1443,7 @@ void db_conf_save(uint8_t val) {
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}
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void np_int_conf_save(uint8_t p_int) {
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eeprom_update(eeprom_addr(ADDR_CONF_PSET), 0x01);
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eeprom_update(eeprom_addr(ADDR_CONF_PSET), CONF_OK_BYTE);
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eeprom_update(eeprom_addr(ADDR_CONF_PINT), p_int);
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}
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